CORRIGENDUM: Biological consequences of nanoscale energy deposition near irradiated heavy atom nanoparticles

更正:受辐照重原子纳米粒子附近纳米尺度能量沉积的生物学后果

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Abstract

Solid-state nanopore has captured the attention of many researchers due to its characteristic of nanoscale. Now, different fabrication methods have been reported, which can be summarized into two broad categories: "top-down" etching technology and "bottom-up" shrinkage technology. Ion track etching method, mask etching method chemical solution etching method, and high-energy particle etching and shrinkage method are exhibited in this report. Besides, we also discussed applications of solid-state nanopore fabrication technology in DNA sequencing, protein detection, and energy conversion.

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